Torcetrapib
A review argues that after the torcetrapib failure, HDL functionality biomarkers are needed since HDL cholesterol alone is not a functional measure (Expert Rev Cardiovasc Ther 2010)
Original title: Implications of torcetrapib failure for the future of HDL therapy: is HDL-cholesterol the right target?
This review examines the implications of the torcetrapib failure for the future of HDL-directed therapy, questioning whether HDL cholesterol is the right target for anti-atherogenic drug development. Although HDL has many potentially anti-atherogenic functions and an inverse correlation between HDL cholesterol levels and cardiovascular risk, the failure of torcetrapib, along with frequent confounding of low HDL cholesterol with other pro-atherogenic conditions and inconsistent data from patients and animal models with genetic HDL dyslipidemias, cast doubt on HDL cholesterol as a therapeutic target. The author argues that because HDL cholesterol is an integrative but nonfunctional measure of particle size and number, biomarkers reflecting the actual functionality of HDL particles are needed to properly assess cardiovascular risk from disturbances and treatments of HDL metabolism, and calls for discovery of therapeutics that improve HDL function directly rather than just HDL cholesterol quantity.
Original abstract
Owing to many potentially anti-atherogenic functions and the inverse correlation of high-density lipoprotein (HDL)-cholesterol (C) plasma levels with cardiovascular risk, HDLs have evolved as an attractive target for the prevention and therapy of coronary heart disease. Previously, the failure of torcetrapib, the frequent confounding of low HDL-C with other pro-atherogenic conditions, as well as inconsistent data from patients and animal models with genetic HDL dyslipidemias, left in doubt the suitability of HDL-C as a target for anti-atherogenic therapy. However, HDL-C is an integrative but nonfunctional measure of particle size and number. Therefore, biomarkers reflecting the functionality of HDL particles are needed to assess and monitor the cardiovascular risk exerted by disturbances and treatments of HDL metabolism, respectively. Moreover, the discovery of novel therapeutics that improve HDL metabolism, mimic HDL function, or cure the regulatory network underlying dyslipidemias and dysfunctions of HDL should be a major aim of atherosclerosis research.
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 18 August 2026. Methods.